自上而下的ETD-MS提供不可靠的蛋氨酸氧化定量。

S. Tadi, J. Sharp
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引用次数: 3

摘要

蛋氨酸氧化在许多重要的生物学和生物医学过程中起着关键作用,包括细胞氧化还原反应和蛋白质药物的稳定性。自底向上分析蛋氨酸氧化的方法可能会受到序列覆盖不完整的影响,并且无法容易地检测2个或更多蛋氨酸之间的相关氧化。然而,在自上而下的分析中定量蛋白质氧化的方法是缺乏的。先前的工作表明,基于电子转移解离(ETD)的串联质谱(MS/MS)碎片化可以准确和精确地定量肽中的氨基酸氧化,即使在复杂的样品中也是如此。然而,基于etd的MS/MS片段以自上而下的方式准确定量蛋白质氨基酸氧化的能力尚未见报道。以降肌红蛋白和钙调蛋白为模型蛋白,在H2O2中孵育,将蛋氨酸部分转化为蛋氨酸亚砜。采用自顶向下的基于ETD的碎片化方法,我们量化了各种ETD产物离子的氧化量,并将量化值与传统的自底向上分析进行了比较。我们发现,自上而下的MS/MS对蛋氨酸氧化的总体定量范围从与传统的自下而上方法的良好一致到两种技术之间的巨大差异,包括缺少氧化产物离子和测量氧化量的巨大差异。必须注意过渡etd为基础的定量氧化从肽水平到完整的蛋白质水平。
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Top-Down ETD-MS Provides Unreliable Quantitation of Methionine Oxidation.
Methionine oxidation plays a critical role in many processes of biologic and biomedical importance, including cellular redox responses and stability of protein pharmaceuticals. Bottom-up methods for analysis of methionine oxidation can suffer from incomplete sequence coverage, as well as an inability to readily detect correlated oxidation between 2 or more methionines. However, the methodology for quantifying protein oxidation in top-down analyses is lacking. Previous work has shown that electron transfer dissociation (ETD)-based tandem mass spectrometry (MS/MS) fragmentation offers accurate and precise quantification of amino acid oxidation in peptides, even in complex samples. However, the ability of ETD-based MS/MS fragmentation to accurately quantify amino acid oxidation of proteins in a top-down manner has not been reported. Using apomyoglobin and calmodulin as model proteins, we partially converted methionines into methionine sulfoxide by incubation in H2O2. Using top-down ETD-based fragmentation, we quantified the amount of oxidation of various ETD product ions and compared the quantified values with those from traditional bottom-up analysis. We find that overall quantification of methionine oxidation by top-down MS/MS ranges from good agreement with traditional bottom-up methods to vast differences between the 2 techniques, including missing oxidized product ions and large differences in measured oxidation quantities. Care must be taken in transitioning ETD-based quantitation of oxidation from the peptide level to the intact protein level.
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